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具有分级多孔结构的羟基碳酸磷灰石涂层的制备

Fabrication of hydroxycarbonate apatite coatings with hierarchically porous structures.

作者信息

Guo Yaping, Zhou Yu, Jia Dechang

机构信息

Institute for Advanced Ceramics, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Acta Biomater. 2008 Mar;4(2):334-42. doi: 10.1016/j.actbio.2007.08.002. Epub 2007 Aug 23.

Abstract

Hierarchically porous hydroxycarbonate apatite is known to have a high bioactivity to regenerate bone, but its application in bone graft substitutes has been restricted due to its poor mechanical properties. This drawback has been addressed by (i) depositing calcium carbonate coatings on Ti6Al4V substrates by electrophoresis; and (ii) converting the coatings to hydroxycarbonate apatite coatings with hierarchically porous structures by treatment with a phosphate buffer solution (PBS). After soaking calcium carbonate coatings in PBS for 1 day, calcium-deficient hydroxycarbonate apatite nanocrystals are deposited on the surfaces of calcium carbonate particles via a dissolution-precipitation reaction. The aggregation of the nanocrystals produces plate-like hydroxycarbonate apatite. Mesopores with a pore size of approximately 3.8nm and macropores or apertures with an aperture size of approximately 1 microm are formed within and among the plates, respectively. After soaking for 9 days, the pore size of mesopores decreases and the mesopores disappear partly due to the crystal growth of hydroxycarbonate apatite. Simulated body fluid immersion tests reveal that the good in vitro bioactivity of hydroxycarbonate apatite coatings is attributed to the calcium deficiencies in apatite lattice and the hierarchically porous structures.

摘要

众所周知,具有分级多孔结构的羟基碳酸磷灰石具有很高的骨再生生物活性,但其机械性能较差,限制了其在骨移植替代物中的应用。这一缺点已通过以下方法得到解决:(i)通过电泳在Ti6Al4V基体上沉积碳酸钙涂层;(ii)用磷酸盐缓冲溶液(PBS)处理,将涂层转化为具有分级多孔结构的羟基碳酸磷灰石涂层。将碳酸钙涂层在PBS中浸泡1天后,通过溶解-沉淀反应,缺钙的羟基碳酸磷灰石纳米晶体沉积在碳酸钙颗粒表面。纳米晶体的聚集产生片状羟基碳酸磷灰石。在片层内部和片层之间分别形成了孔径约为3.8nm的中孔和孔径约为1μm的大孔或孔隙。浸泡9天后,由于羟基碳酸磷灰石的晶体生长,中孔孔径减小,部分中孔消失。模拟体液浸泡试验表明,羟基碳酸磷灰石涂层良好的体外生物活性归因于磷灰石晶格中的钙缺陷和分级多孔结构。

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